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First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET

In contrast to cardiac sympathetic activity which can be assessed with established PET tracers, there are currently no suitable radioligands to measure cardiac parasympathetic (cholinergic) activity. A radioligand able to measure cardiac cholinergic activity would be an invaluable clinical and resea...

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Autores principales: Saint-Georges, Zacharie, Zayed, Vanessa K., Dinelle, Katie, Cassidy, Clifford, Soucy, Jean-Paul, Massarweh, Gassan, Rotstein, Benjamin, Nery, Pablo B., Guimond, Synthia, deKemp, Robert, Tuominen, Lauri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921026/
https://www.ncbi.nlm.nih.gov/pubmed/32909238
http://dx.doi.org/10.1007/s12350-020-02323-w
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author Saint-Georges, Zacharie
Zayed, Vanessa K.
Dinelle, Katie
Cassidy, Clifford
Soucy, Jean-Paul
Massarweh, Gassan
Rotstein, Benjamin
Nery, Pablo B.
Guimond, Synthia
deKemp, Robert
Tuominen, Lauri
author_facet Saint-Georges, Zacharie
Zayed, Vanessa K.
Dinelle, Katie
Cassidy, Clifford
Soucy, Jean-Paul
Massarweh, Gassan
Rotstein, Benjamin
Nery, Pablo B.
Guimond, Synthia
deKemp, Robert
Tuominen, Lauri
author_sort Saint-Georges, Zacharie
collection PubMed
description In contrast to cardiac sympathetic activity which can be assessed with established PET tracers, there are currently no suitable radioligands to measure cardiac parasympathetic (cholinergic) activity. A radioligand able to measure cardiac cholinergic activity would be an invaluable clinical and research tool since cholinergic dysfunction has been associated with a wide array of pathologies (e.g., chronic heart failure, myocardial infarction, arrythmias). [(18)F]Fluoroethoxybenzovesamicol (FEOBV) is a cholinergic radiotracer that has been extensively validated in the brain. Whether FEOBV PET can be used to assess cholinergic activity in the heart is not known. Hence, this study aimed to evaluate the properties of FEOBV for cardiac PET imaging and cholinergic activity mapping. PET data were collected for 40 minutes after injection of 230 ± 50 MBq of FEOBV in four healthy participants (1 female; Age: 37 ± 10; BMI: 25 ± 2). Dynamic LV time activity curves were fitted with Logan graphical, 1-tissue compartment, and 2-tissue compartment models, yielding similar distribution volume estimates for each participant. Our initial data show that FEOBV PET has favorable tracer kinetics for quantification of cholinergic activity and is a promising new method for assessing parasympathetic function in the heart.
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spelling pubmed-79210262021-03-19 First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET Saint-Georges, Zacharie Zayed, Vanessa K. Dinelle, Katie Cassidy, Clifford Soucy, Jean-Paul Massarweh, Gassan Rotstein, Benjamin Nery, Pablo B. Guimond, Synthia deKemp, Robert Tuominen, Lauri J Nucl Cardiol Brief Report In contrast to cardiac sympathetic activity which can be assessed with established PET tracers, there are currently no suitable radioligands to measure cardiac parasympathetic (cholinergic) activity. A radioligand able to measure cardiac cholinergic activity would be an invaluable clinical and research tool since cholinergic dysfunction has been associated with a wide array of pathologies (e.g., chronic heart failure, myocardial infarction, arrythmias). [(18)F]Fluoroethoxybenzovesamicol (FEOBV) is a cholinergic radiotracer that has been extensively validated in the brain. Whether FEOBV PET can be used to assess cholinergic activity in the heart is not known. Hence, this study aimed to evaluate the properties of FEOBV for cardiac PET imaging and cholinergic activity mapping. PET data were collected for 40 minutes after injection of 230 ± 50 MBq of FEOBV in four healthy participants (1 female; Age: 37 ± 10; BMI: 25 ± 2). Dynamic LV time activity curves were fitted with Logan graphical, 1-tissue compartment, and 2-tissue compartment models, yielding similar distribution volume estimates for each participant. Our initial data show that FEOBV PET has favorable tracer kinetics for quantification of cholinergic activity and is a promising new method for assessing parasympathetic function in the heart. Springer International Publishing 2020-09-09 2021 /pmc/articles/PMC7921026/ /pubmed/32909238 http://dx.doi.org/10.1007/s12350-020-02323-w Text en © The Author(s) 2020 Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Brief Report
Saint-Georges, Zacharie
Zayed, Vanessa K.
Dinelle, Katie
Cassidy, Clifford
Soucy, Jean-Paul
Massarweh, Gassan
Rotstein, Benjamin
Nery, Pablo B.
Guimond, Synthia
deKemp, Robert
Tuominen, Lauri
First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title_full First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title_fullStr First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title_full_unstemmed First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title_short First-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)F]FEOBV PET
title_sort first-in-human imaging and kinetic analysis of vesicular acetylcholine transporter density in the heart using [(18)f]feobv pet
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7921026/
https://www.ncbi.nlm.nih.gov/pubmed/32909238
http://dx.doi.org/10.1007/s12350-020-02323-w
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